Delta-9-Tetrahydrocannabinol and Body Fat



Delta-9-Tetrahydrocannabinol (Δ9THC) is the main psychoactive component of cannabis, and it has been the subject of numerous studies to understand its effects on the body. One interesting aspect that has been investigated is the relationship between Δ9THC and body fat.

In a study conducted on rats, researchers injected [14C]Δ9THC subcutaneously every day for a period ranging from 1 to 26 days. The aim was to determine the concentrations of Δ9THC and its metabolites, namely 11-hydroxytetrahydrocannabinol and 8,11-dihydroxytetrahydrocannabinol, in various tissues.

What they found was quite intriguing. After a single injection, the concentration of Δ9THC in fat was found to be ten times greater than in any other tissue examined. This suggests that Δ9THC has a strong affinity for fat cells and tends to accumulate in them. Furthermore, this high concentration of Δ9THC persisted in fat tissue for up to 2 weeks.

Delta-9-Tetrahydrocannabinol and Body Fat

But it doesn't stop there. With repeated injections, both Δ9THC and its metabolites were found to accumulate not only in fat tissue but also in the brain. This accumulation indicates that Δ9THC has the ability to cross the blood-brain barrier and affect the central nervous system.

So, what does this mean for individuals who consume cannabis? Well, these findings suggest that Δ9THC has a tendency to be stored in fat cells. This may have implications for long-term cannabis users, as the presence of Δ9THC in fat tissue could potentially lead to its slow release into the bloodstream over time.

Additionally, the accumulation of Δ9THC and its metabolites in the brain highlights the potential for prolonged psychoactive effects even after the immediate effects of cannabis use have subsided. This may explain why some individuals experience residual effects or have difficulty clearing cannabis from their system.

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It's important to note that this study was conducted on rats, and further research is needed to fully understand how these findings translate to humans. However, it provides valuable insights into the pharmacokinetics of Δ9THC and its potential interactions with body fat.

In conclusion, Δ9THC has a strong affinity for fat cells and tends to accumulate in them. This accumulation can persist for weeks and may have implications for long-term cannabis users. The presence of Δ9THC in fat tissue could result in slow release into the bloodstream over time, potentially leading to prolonged psychoactive effects. However, more research is needed to fully understand the impact of Δ9THC on human body fat and its long-term effects.

Reference

Delta-9-Tetrahydrocannabinol: Localization in Body Fat David S. Kreuz and Julius AxelrodAuthors Info & Affiliations Science 26 Jan 1973 Vol 179, Issue 4071 pp. 391-393 DOI: 10.1126/science.179.4071.3

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